波纹结构的尾波场电位

A. Novokhatski
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引用次数: 23

摘要

用于“解密器”设备的波纹结构通常是一根管或两块板,壁上有小波纹(凸起)。如果模态的波长比管道中凸起之间的距离长得多,那么由相对论束激发的尾迹电位就有一个很好的单模态描述。然而,目前用于自由电子激光器的超短束激发了更高频率的场,相应的尾流电位将与单模描述大不相同。我们根据麦克斯韦方程组的数值解对这些尾迹电位进行了分析。证实了波纹结构中超短束尾流场的行为与通常用指数函数描述尾流势的加速结构中超短束尾流场没有太大区别。对于实际应用,我们给出SLAC“解密器”的结果。我们还对在韩国浦项加速器实验室安装和测量的类似装置进行了计算。结果与实验结果吻合得很好。
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Wakefield potentials of corrugated structures
A corrugated structure, which is used in “dechirper” devices, is usually a pipe or two plates with small corrugations (bumps) on the walls. There is a good single-mode description of the wake potentials excited by a relativistic bunch if the wave length of the mode is much longer than the distance between the bumps in the pipe. However, ultrashort bunches, which are now used in free electron lasers, excite much higher frequency fields and the corresponding wake potentials will be very different from the single-mode description. We have made analyses of these wake potentials based on a numerical solution of Maxwell’s equations. It was confirmed that the behavior of the wakefields of ultrashort bunches in corrugated structures is not much different from the fields excited usually in accelerating structures where the wake potentials are described by the exponential function. For a practical application we present results for the SLAC “dechirper.” We also carried out calculations for a similar device, that was installed and measured at the Pohang Accelerator Laboratory, Korea. As a result, we find very good agreement with the experimental results.
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3-8 weeks
期刊介绍: Physical Review Special Topics - Accelerators and Beams (PRST-AB), is a peer reviewed, purely electronic journal, distributed without charge to readers and funded by contributions from national laboratories. It covers the full range of accelerator science and technology: subsystem and component technologies, beam dynamics; accelerator applications; and design, operation, and improvement of accelerators used in science and industry. This includes accelerators for high-energy and nuclear physics, synchrotron radiation production, spallation neutron sources, medical therapy, and intense beam applications.
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